Giant optical anisotropy in transition metal dichalcogenides for next-generation photonics

Optical anisotropy in a broad spectral range is pivotal to efficient light manipulation. Here, the authors measure a birefringence of 1.5 in the infrared range and 3 in the visible light for MoS2.

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Autores principales: G. A. Ermolaev, D. V. Grudinin, Y. V. Stebunov, K. V. Voronin, V. G. Kravets, J. Duan, A. B. Mazitov, G. I. Tselikov, A. Bylinkin, D. I. Yakubovsky, S. M. Novikov, D. G. Baranov, A. Y. Nikitin, I. A. Kruglov, T. Shegai, P. Alonso-González, A. N. Grigorenko, A. V. Arsenin, K. S. Novoselov, V. S. Volkov
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/89f1a1593e2f45328dc63ab4c1b417fe
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spelling oai:doaj.org-article:89f1a1593e2f45328dc63ab4c1b417fe2021-12-02T12:09:31ZGiant optical anisotropy in transition metal dichalcogenides for next-generation photonics10.1038/s41467-021-21139-x2041-1723https://doaj.org/article/89f1a1593e2f45328dc63ab4c1b417fe2021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21139-xhttps://doaj.org/toc/2041-1723Optical anisotropy in a broad spectral range is pivotal to efficient light manipulation. Here, the authors measure a birefringence of 1.5 in the infrared range and 3 in the visible light for MoS2.G. A. ErmolaevD. V. GrudininY. V. StebunovK. V. VoroninV. G. KravetsJ. DuanA. B. MazitovG. I. TselikovA. BylinkinD. I. YakubovskyS. M. NovikovD. G. BaranovA. Y. NikitinI. A. KruglovT. ShegaiP. Alonso-GonzálezA. N. GrigorenkoA. V. ArseninK. S. NovoselovV. S. VolkovNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
G. A. Ermolaev
D. V. Grudinin
Y. V. Stebunov
K. V. Voronin
V. G. Kravets
J. Duan
A. B. Mazitov
G. I. Tselikov
A. Bylinkin
D. I. Yakubovsky
S. M. Novikov
D. G. Baranov
A. Y. Nikitin
I. A. Kruglov
T. Shegai
P. Alonso-González
A. N. Grigorenko
A. V. Arsenin
K. S. Novoselov
V. S. Volkov
Giant optical anisotropy in transition metal dichalcogenides for next-generation photonics
description Optical anisotropy in a broad spectral range is pivotal to efficient light manipulation. Here, the authors measure a birefringence of 1.5 in the infrared range and 3 in the visible light for MoS2.
format article
author G. A. Ermolaev
D. V. Grudinin
Y. V. Stebunov
K. V. Voronin
V. G. Kravets
J. Duan
A. B. Mazitov
G. I. Tselikov
A. Bylinkin
D. I. Yakubovsky
S. M. Novikov
D. G. Baranov
A. Y. Nikitin
I. A. Kruglov
T. Shegai
P. Alonso-González
A. N. Grigorenko
A. V. Arsenin
K. S. Novoselov
V. S. Volkov
author_facet G. A. Ermolaev
D. V. Grudinin
Y. V. Stebunov
K. V. Voronin
V. G. Kravets
J. Duan
A. B. Mazitov
G. I. Tselikov
A. Bylinkin
D. I. Yakubovsky
S. M. Novikov
D. G. Baranov
A. Y. Nikitin
I. A. Kruglov
T. Shegai
P. Alonso-González
A. N. Grigorenko
A. V. Arsenin
K. S. Novoselov
V. S. Volkov
author_sort G. A. Ermolaev
title Giant optical anisotropy in transition metal dichalcogenides for next-generation photonics
title_short Giant optical anisotropy in transition metal dichalcogenides for next-generation photonics
title_full Giant optical anisotropy in transition metal dichalcogenides for next-generation photonics
title_fullStr Giant optical anisotropy in transition metal dichalcogenides for next-generation photonics
title_full_unstemmed Giant optical anisotropy in transition metal dichalcogenides for next-generation photonics
title_sort giant optical anisotropy in transition metal dichalcogenides for next-generation photonics
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/89f1a1593e2f45328dc63ab4c1b417fe
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